Mehier-Humbert Sophie, Guy Richard H
University of Geneva, School of Pharmacy, CH-1211 Geneva 4, Switzerland.
Adv Drug Deliv Rev. 2005 Apr 5;57(5):733-53. doi: 10.1016/j.addr.2004.12.007.
One factor critical to successful gene therapy is the development of efficient delivery systems. Although advances in gene transfer technology, including viral and non-viral vectors, have been made, an ideal vector system has not yet been constructed. This review describes the basic principles behind various physical methods for gene transfer and assesses the advantages and performance of such approaches, compared to other transfection systems. In particular, the kinetics and efficiency of gene delivery, the toxicity, in vivo feasibility, and targeting ability of different physical methodologies are discussed and evaluated.
成功进行基因治疗的一个关键因素是开发高效的递送系统。尽管在基因转移技术方面取得了进展,包括病毒载体和非病毒载体,但尚未构建出理想的载体系统。本综述描述了各种基因转移物理方法背后的基本原理,并评估了与其他转染系统相比这些方法的优势和性能。特别是,讨论并评估了不同物理方法的基因递送动力学和效率、毒性、体内可行性以及靶向能力。